Climate change in tropical fresh waters (comment on the paper 'Plankton dynamics under different climatic conditions in space and time' by de Senerpont Domis et al., 2013)

被引:20
作者
Sarmento, Hugo [1 ]
Amado, Andre M. [1 ]
Descy, Jean-Pierre [2 ]
机构
[1] Univ Fed Rio Grande do Norte, Dept Oceanog & Limnol, BR-59014002 Natal, RN, Brazil
[2] Univ Namur, URBE, Lab Freshwater Ecol, Dept Biol, Namur, Belgium
关键词
climate change; phytoplankton; Plankton Ecology Group model; tropical limnology; zooplankton; LAKE TANGANYIKA; PRIMARY PRODUCTIVITY;
D O I
10.1111/fwb.12140
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
1. de Senerpont Domis etal. (2013, Freshwater Biology, 58, 463-482) forecasted changes in plankton dynamics in temperate, polar and tropical regions resulting from climate change. For tropical regions, they predicted an increase in precipitation intensity that would increase nutrient loading, increasing phytoplankton biomass and select for plankton adapted to flushing. 2. We do not agree with these predictions, as regional projections from the IPCC did not forecast a major increase in precipitation in tropical regions. The only regions where a slight increase in precipitation was projected were eastern Africa and South-East Asia. In eastern Africa, the major freshwater bodies are large, deep lakes that have very long residence times and are unlikely to be affected by flushing. Moreover, nutrient inputs from their catchment represent a small fraction of their total nutrient loading. 3. Several independent studies carried out in this region have provided evidence of a decrease in primary productivity in some of these large tropical lakes due to climate change. The major process providing nutrients to the euphotic layer is internal loading, which has been reduced as warming of the surface waters has increased the temperature gradient and the water column stability. Moreover, reduced velocity of trade winds during the dry season has affected the mixed layer depth and decreased internal nutrient fluxes. Therefore, the trend for large tropical lakes in a warming climate is oligotrophication, not eutrophication. 4. In tropical South America, the rainfall increase is not the dominant scenario; thus, the predicted changes in plankton dynamics do not stand. 5. Therefore, we believe that the predictions presented in the paper for tropical systems under a changing climate are invalid for most tropical systems.
引用
收藏
页码:2208 / 2210
页数:3
相关论文
共 14 条
  • [1] Late Holocene linkages between decade-century scale climate variability and productivity at Lake Tanganyika, Africa
    Cohen, Andrew S.
    Lezzar, Kiram E.
    Cole, Julia
    Dettman, David
    Ellis, Geoffrey S.
    Gonneea, Meagan Eagle
    Plisnier, Pierre-Denis
    Langenberg, Victor
    Blaauw, Maarten
    Zilifi, Derrick
    [J]. JOURNAL OF PALEOLIMNOLOGY, 2006, 36 (02) : 189 - 209
  • [2] Plankton dynamics under different climatic conditions in space and time
    Domis, Lisette N. De Senerpont
    Elser, James J.
    Gsell, Alena S.
    Huszar, Vera L. M.
    Ibelings, Bas W.
    Jeppesen, Erik
    Kosten, Sarian
    Mooij, Wolf M.
    Roland, Fabio
    Sommer, Ulrich
    Van Donk, Ellen
    Winder, Monika
    Lurling, Miquel
    [J]. FRESHWATER BIOLOGY, 2013, 58 (03) : 463 - 482
  • [3] Multiple stressors cause rapid ecosystem change in Lake Victoria
    Hecky, R. E.
    Mugidde, R.
    Ramlal, P. S.
    Talbot, M. R.
    Kling, G. W.
    [J]. FRESHWATER BIOLOGY, 2010, 55 : 19 - 42
  • [4] ENDLESS SUMMER - INTERNAL LOADING PROCESSES DOMINATE NUTRIENT CYCLING IN TROPICAL LAKES
    KILHAM, P
    KILHAM, SS
    [J]. FRESHWATER BIOLOGY, 1990, 23 (02) : 379 - 389
  • [5] Future change of climate in South America in the late twenty-first century: intercomparison of scenarios from three regional climate models
    Marengo, Jose A.
    Ambrizzi, Tercio
    da Rocha, Rosmeri P.
    Alves, Lincoln M.
    Cuadra, Santiago V.
    Valverde, Maria C.
    Torres, Roger R.
    Santos, Daniel C.
    Ferraz, Simone E. T.
    [J]. CLIMATE DYNAMICS, 2010, 35 (06) : 1089 - 1113
  • [6] Paleolimnological investigations of anthropogenic environmental change in Lake Tanganyika: VI. Geochemical indicators
    O'Reilly, CM
    Dettman, DL
    Cohen, AS
    [J]. JOURNAL OF PALEOLIMNOLOGY, 2005, 34 (01) : 85 - 91
  • [7] Climate change decreases aquatic ecosystem productivity of Lake Tanganyika, Africa
    O'Reilly, CM
    Alin, SR
    Plisnier, PD
    Cohen, AS
    McKee, BA
    [J]. NATURE, 2003, 424 (6950) : 766 - 768
  • [8] Climate change in Brazil: perspective on the biogeochemistry of inland waters
    Roland, F.
    Huszar, V. L. M.
    Farjalla, V. F.
    Enrich-Prast, A.
    Amado, A. M.
    Ometto, J. P. H. B.
    [J]. BRAZILIAN JOURNAL OF BIOLOGY, 2012, 72 (03) : 709 - 722
  • [9] Solomon S, 2007, AR4 CLIMATE CHANGE 2007: THE PHYSICAL SCIENCE BASIS, P1
  • [10] SOMMER U, 1986, ARCH HYDROBIOL, V106, P433